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\title{Project Management}
\subtitle{Réponse à l'appel d'offre \textit{SLIPWAY}}
%\caption{IR}
\author{B.\textsc{Bizet} A.\textsc{Buisson} A.\textsc{Marguerite} R.\textsc{Rincé}}

%\Logo{\includegraphics[scale=0.40]{img/logouniv.eps}}
\Logo(9,-0.70){\includegraphics[scale=0.4]{img/logoPSI.eps}}

\institution{
  PSI entreprise \\
  4 rue de la Houssinière, \\
  BP92208, F-44322 Nantes cedex 03, FRANCE
}


\begin{document}
% make the title slide
\maketitle

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%\overlays{5}{
  \begin{slide}[Box]{Déroulement}
%    \textbf{}
%    \vspace{0,8cm}
      \begin{enumerate}
        \item Présentation
        \item Planning détaillée
        \item Plan de charges
        \item Journal d'actions
        \item Facture et plan de facturation
        \item Conclusion
      \end{enumerate}
  \end{slide}
%}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%


  \begin{slide}[Box]{Présentation de \textsc{PSI}}
    \textbf{Power Services Informatique}
    \vspace{0,3cm}
    \begin{Itemize}
    \item PSI est un société basée à Nantes. Fondée en 2009 par Anatole \textsc{Bizet}.
    \item Dirigée aujourd'hui par JP.\textsc{Bizet}.
    \item Jeune entreprise dynamique composée de 7 salariés, avec chiffre d'affaire de 850 000 euros.
    \item Ses collaborateurs : SFR, IBM, Total\dots
    \end{Itemize}
  \end{slide}




%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

  \begin{slide}[Box]{Présentation de l'équipe}
    \textbf{L'équipe \textit{PSI} pour ce projet}
    \vspace{0,3cm}
    \begin{Itemize}
\item Chef de projet JP.\textsc{Bizet} : Ancien de chef de projet chez Accenture (15 ans)
\item Ingénieur JM.\textsc{Lafrange} : Ancien expert C/\C++/python chez Logica (7 ans).
\item Technicien T.\textsc{Dupont} : Diplomé DUT GEII (Lyon).
\item Technicien D.\textsc{Baudouin} : BTS Informatique (Nantes).
    \end{Itemize}
   \end{slide}


 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 



%% \overlays{3}{
%%   \begin{slide}[Box]{Présentation du \textsc{LINA}}
%%     \slidetextsize
%%     \setlength{\MiniPageLeft}{0.4\textwidth}
%%     \setlength{\MiniPageRight}{\textwidth}\addtolength{\MiniPageRight}{-\MiniPageLeft}
%%     \begin{minipage}[t]{\MiniPageLeft}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \onlySlide*{1}{\includegraphics[width=0.8\MiniPageLeft]{img/lina}}
%%           \fromSlide{2}{\includegraphics[width=\MiniPageLeft]{img/logolina}}
%%         \end{center}
%%       \end{figure}
%%     \end{minipage}
%%     \begin{minipage}[t]{\MiniPageRight}
%%       \begin{Itemize}
%%       \item Laboratoire d’Informatique de Nantes-Atlantique :
%%         \begin{Itemize}
%%         \item Effectif global proche de 170 membres 
%%           \fromSlide{2}{\item 10 équipes de recherche}
%%         \end{Itemize}
%%         \fromSlide{3}{\item Équipe Optimisation globale, optimisation multi-objectifs (\textsc{OPTI})}
%%       \end{Itemize}
%%     \end{minipage}
%%   \end{slide}
%% }


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

\overlays{1}{
  \begin{slide}[Box]{Planning}

    \slidetextsize
    \begin{figure}
      \includegraphics[scale=0.21]{img/planningDetail.eps}
    \end{figure}
    
  \end{slide}
}

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\overlays{1}{
  \begin{slide}[Box]{Plan de charges}
    \slidetextsize
    \begin{figure}
      \includegraphics[scale=0.4]{img/PlanCharge.eps}
    \end{figure}
  \end{slide}
}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\overlays{1}{
  \begin{slide}[Box]{Journal d'action}
    \slidetextsize
    \begin{figure}
      \includegraphics[scale=0.3]{img/JournalActions.eps}
    \end{figure}
  \end{slide}
}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\overlays{1}{
  \begin{slide}[Box]{Plan de Facturation (1/2)}
    \begin{figure}
      \includegraphics[scale=0.35]{img/CoutSalarialProjet.eps} \hspace{1cm}      \includegraphics[scale=0.30]{img/CoefEntreprise.eps} 
    \end{figure}

   \end{slide}
}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
\overlays{1}{
  \begin{slide}[Box]{Plan de Facturation (2/2)}
    \begin{figure}
      \includegraphics[scale=0.3]{img/PrixProjet.eps}     \hspace{0,2cm}    \includegraphics[scale=0.25]{img/PlanFacturation.eps}
    \end{figure}
    \begin{figure}
      \includegraphics[scale=0.30]{img/PourcentMarges.eps} 
    \end{figure}

  \end{slide}
}
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

  \begin{slide}[Box]{Conclusion}
    \textbf{Pourquoi \textit{PSI} ?}
    \vspace{0,3cm}
      \begin{Itemize}
\item Une entreprise à l'échelle du projet.
% 
\item Une entreprise souple et dynamique.
  %       \vspace{0,3cm}
\item Une entreprise expérimentée.
      \end{Itemize}
  \end{slide}

%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%ù%








%% \overlays{5}{
%%   \begin{slide}[Box]{Domaine de recherche}
%%     \slidetextsize
%%     \textbf{L’Arithmétique des intervalles}\\
%%     \begin{Itemize} 
%%       \fromSlide{2}{\item Extension des fonctions aux intervalles}
%%       \fromSlide{3}{\item Quelques opérations: \\}
%%     \begin{Itemize}
%%       \fromSlide{4}{\item Opérateur Plus : \\
%%         $[a \dots b] + [c \dots d] = [a + c \dots b + d]$ }
%%       \fromSlide{5}{\item Opérateur Fois : \\
%%       $ [a \dots b] × [c \dots d] = $\\ \hspace{1cm}$[min(ac, ad, bc, bd) \dots max(ac, ad, bc, bd)]$}
%%     \end{Itemize}
%%     \end{Itemize}
    
%%   \end{slide}
%% }
%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%ù
%% \overlays{4}{
%%   \begin{slide}[Box]{Domaine de recherche}
%%     \slidetextsize
%%     \textbf{Définition d'un \textsc{CSP}}\\
%%   \begin{Itemize}
%%     \fromSlide{2}{  \item
%%       Un ensemble de variables $\mathbf{V} = \left\{ v_1, \dots ,v_n \right\}$.}
%%     \fromSlide{3}{  \item
%%       Un domaine de valeurs  $D_i$ pour chaque variable $v_i$  \\ avec $\mathbf{D} =D_1 \times \dots \times D_n $.}
%%     \fromSlide{4}{  \item
%%       Un ensemble de contraintes :  $\mathbf{C} = \left\{c_1, \dots ,c_m\right\}$. }
%%   \end{Itemize}
%%   \end{slide}
%% }

%% \overlays{4}{
%%   \begin{slide}[Box]{Intersection de 3 cercles}
%%     \onlySlide*{1}{
%%       \textbf{Exemple de CSP}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.45\textwidth]{img/hull.ps}
%%         \end{center}
%%       \end{figure}
%%       \begin{equation*}
%%         \begin{cases}
%%           (x-x_{c_1})²+(y-y_{c_1})² = r_{c_1}²\\
%%           (x-x_{c_2})²+(y-y_{c_2})² = r_{c_2}²\\
%%           (x-x_{c_3})²+(y-y_{c_3})² = r_{c_3}²
%%         \end{cases}
%%       \end{equation*}
%% }
%%     \onlySlide*{2}{
%%     \emph{Hull-consistance} : 1\up{ère} étape
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.55\textwidth]{img/hull1}
%%         \end{center}
%%       \end{figure}
%%       \begin{equation*}
%%         (x-x_{c_1})²+(y-y_{c_1})² = r_{c_1}²
%%       \end{equation*}
%%         }
%%     \onlySlide*{3}{
%%     \emph{Hull-consistance} : 2\up{nd} étape
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.55\textwidth]{img/hull2}
%%         \end{center}
%%       \end{figure}
%%    \begin{equation*}
%%        (x-x_{c_2})²+(y-y_{c_2})² = r_{c_2}²
%%     \end{equation*}
%%     }
%%     \onlySlide*{4}{
%%     \emph{Hull-consistance} : 3\up{ère} étape
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.55\textwidth]{img/hull3}
%%         \end{center}
%%       \end{figure}
%%     \begin{equation*}
%%         (x-x_{c_3})²+(y-y_{c_3})² = r_{c_3}²
%%     \end{equation*}
%%     }
%%   \end{slide}
%% }
 
%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% \overlays{3}{
%%   \begin{slide}[Box]{Exemple de \emph{Branch and Prune} :\\  Intersection de deux cercles}
%%     \slidetextsize
%%     \onlySlide*{1}{1\up{ère} Étape : \emph{Pruning}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.65\textwidth]{img/BP}
%%         \end{center}
%%       \end{figure}
%%     }      
%%     \onlySlide*{2}{2\up{nd} Étape : \emph{Branch}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.65\textwidth]{img/BP2}
%%         \end{center}
%%       \end{figure}
%%     }
%%     \fromSlide{3}{3\up{ème} Étape :\emph{Pruning}
%%       \begin{figure}[t]
%%         \begin{center}
          
%%           \includegraphics[width=0.65\textwidth]{img/BP3}
%%         \end{center}
%%       \end{figure}
%%     }

%% \end{slide}}

%%  %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%  
%%   \begin{slide}[Box]{Realpaver : présentation}
%%     \slidetextsize
%%     Méthodes de résolutions de contraintes géométriques par propagation d’intervalles.
%%     \begin{figure}[t]\centering \includegraphics[width=0.35\textwidth]{img/disk-disk.ps}\end{figure}
%%   \end{slide}
%%  %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%  
%% \begin{slide}{Realpaver : exemple de modèle}
%% \hypertarget{code}{ }
%% \tiny\vspace{-.35in}\hspace{-.35in}
%% \begin{verbatim}
%% Constants
%% x0 = -1,
%% y0 = 0,
%% R0 = 2,
%% x1 = 1,
%% y1 = 0,
%% R1 = 2
%% ;
%% Variables
%% x in ]-oo,
%% y in ]-oo,
%% ;
%% Constraints
%% (x-x0)^2 +
%% (x-x1)^2 +
%% ;
%% +oo[,
%% +oo[
%% (y-y0)^2 <= R0^2,
%% (y-y1)^2 <= R1^2
%% \end{verbatim}
%% \end{slide}
%%  %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 
%% \begin{slide}{Realpaver : exemple de sortie}
%% \hypertarget{code}{ }
%% \tiny\vspace{-.35in}
%% \begin{verbatim}
%% RealPaver v. 0.4 (c) LINA 2004
%% INITIAL BOX
%% x in ]-oo , +oo[
%% y in ]-oo , +oo[
%% OUTER BOX 1
%% x in [0.7924334198270921 , 0.795689483022687]
%% y in [0.8806243697296342 , 0.8872330220900007]
%% ...
%% OUTER BOX 3053
%% x in [-0.7956894830226868 , -0.7924334198270919]
%% y in [-0.8872330220900011 , -0.8806243697296345]
%% precision: 0.00661, elapsed time: 150 ms
%% END OF SOLVING
%% Property: reliable process (no solution is lost)
%% Elapsed time: 150 ms
%% \end{verbatim}
%% \end{slide}
%%  %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 
%% \overlays{4}{
%%   \begin{slide}[Box]{Définition d'une boîte}
%%        \slidetextsize
%%     \textbf{Entité atomique du pavage}
%%     \begin{Itemize}
%%       \fromSlide{2}{\item Un identifiant 
%%         \begin{Itemize}
%%         \item NUMBER
%%         \item STRING
%%         \end{Itemize}}
%%       \fromSlide{3}{\item Une liste de coordonnées
%%         \begin{Itemize}
%%         \item INTERVAL
%%       \end{Itemize}}
%%       \fromSlide{4}{\item Une liste des caractéristiques
%%         \begin{Itemize}
%%         \item NUMBER
%%         \item STRING
%%         \item INTERVAL
%%       \end{Itemize}}
%%     \end{Itemize}
%%   \end{slide}
%% }
%% %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% \overlays{4}{
%%   \begin{slide}[Box]{Étude des structures de données pour une boîte}
%%     \textbf{Structure de données}
%%     \begin{Itemize}
%%       \fromSlide{2}{\item Un tableau}
%%       \fromSlide{3}{\item Une liste}
%%       \fromSlide{4}{\item Une table de hachage}
%%     \end{Itemize}
%%   \end{slide}
%% }
%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%   \begin{slide}[Box]{Étude des structures de données pour une boîte}
%%     \textbf{Tests expérimentaux}
%%     \begin{table}[h]
%%       \centering
%%       \begin{tabular}{|c|c|c|c|}
%%         \hline
%%         \backslashbox{Structure} {Nombre d'accès} & $10^6$ & $10^7$ & $10^8$ \\
%%         \hline
%%        3 HashMap & 0.31s& 2.86s & 28.56s\\
%%        \hline
%%        3 ArrayList & 0.20s & 1.81s & 17.49s\\
%%         \hline
%%        1 ArrayList & 0.19s & 1.58s & 15.12s\\
%%         \hline
%%        1 LinkedList & 0.31s & 2,79s &  27.59s\\
%%         \hline
%%       \end{tabular}
%%     \end{table}
%%     Relevé des temps CPU d'accès au caractéristiques en secondes
%%   \end{slide}
%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% \overlays{5}{
%%   \begin{slide}[Box]{Étude des structures de données pour un pavage}
%%     \textbf{Structure de données}
%%     \begin{Itemize}
%%       \fromSlide{2}{\item Vector}
%%       \fromSlide{3}{\item Dictionnaire}
%%       \fromSlide{4}{\item Arbre binaire}
%%       \fromSlide{5}{\item Arbre a-b}
%%     \end{Itemize}
%%   \end{slide}
%% }
%% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%   \begin{slide}[Box]{Visualisation : QuadTree}
%%     \textbf{Exemple de représentation}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.55\textwidth]{img/quadtree}
%%         \end{center}
%%       \end{figure}
%%   \end{slide}
%% %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%   \begin{slide}[Box]{Visualisation : QuadTree}
%%     %    \slidetextsiz
%%     \textbf{Algorithme}
%%     \begin{table}[htbp]
%%       \centering
%%       \begin{tabular}{|c|cccc|}
%%         \hline
%%    Cas de récursion & \includegraphics[scale=0.20]{img/QT4}&  \includegraphics[scale=0.20]{img/QT5}& &\\
%%    \hline
%%    Cas d'arrêt&  \includegraphics[scale=0.20]{img/QT1}&  \includegraphics[scale=0.20]{img/QT2}&  \includegraphics[scale=0.20]{img/QT3}&  \includegraphics[scale=0.30]{img/QT6}\\
%%    \hline
%%       \end{tabular}
%%     \end{table}
%% Classification visuelle des cas d'arrêts et de récursions

%%   \end{slide}
%%   %% %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% \overlays{3}{
%%   \begin{slide}[Box]{Visualisation : QuadTree}
%%     %    \slidetextsiz
%%     \textbf{Inconvénients du QuadTree}
%%     \begin{Itemize}
%%       \fromSlide{2}{\item Structure peu adaptée pour stocker des éléments de dimension $d$}
%%       \fromSlide{3}{\item Problèmes des \emph{frontières}}
%%     \end{Itemize}
%%   \end{slide}
%% }
%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

%%   \begin{slide}[Box]{Visualisation : QuadTree}
%%       \textbf{Cas de superposition des boîtes}
%%       \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.25\textwidth]{img/QT8}
%%         \end{center}
%%       \end{figure}
%%   \end{slide}
%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

%% \overlays{6}{
%%   \begin{slide}[Box]{Visualisation : QuadTree}
%%       \textbf{Le problème des \emph{frontières}}
%%    \onlySlide*{1}{
%%    \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.50\textwidth]{img/SQT1}
%%         \end{center}
%%       \end{figure}
%% }
%%    \onlySlide*{2}{
%%    \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.50\textwidth]{img/SQT2}
%%         \end{center}
%%       \end{figure}
%% }
%%    \onlySlide*{3}{
%%      \begin{figure}[t]
%%        \begin{center}
%%          \includegraphics[width=0.50\textwidth]{img/SQT3}
%%        \end{center}
%%      \end{figure}
%%    }
%%    \onlySlide*{4}{
%%    \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.50\textwidth]{img/SQT4}
%%         \end{center}
%%       \end{figure}
%% }
%%    \onlySlide*{5}{
%%    \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.50\textwidth]{img/SQT5}
%%         \end{center}
%%       \end{figure}
%% }
%%    \fromSlide{6}{
%%    \begin{figure}[t]
%%         \begin{center}
%%           \includegraphics[width=0.50\textwidth]{img/SQT6}
%%         \end{center}
%%       \end{figure}
%% }

%%  \end{slide}
%% }
%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%   \begin{slide}[Box]{Visualisation : R-Tree}
%%           \textbf{Exemple de représentation}
%%       \begin{figure}[t]

%%         \begin{center}
%%           \includegraphics[width=0.55\textwidth]{img/rtree}
%%         \end{center}
%%       \end{figure}
%%   \end{slide}
%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% \overlays{4}{
%%   \begin{slide}[Box]{Visualisation : R-Tree}
%%     \textbf{Description du R-Tree}
%%     \begin{Itemize}
%%       \fromSlide{2}{   \item Variante de l'arbre B}
%%       \fromSlide{3}{    \item Chaque nœud est un MBR de ces fils}
%%       \fromSlide{4}{  \item Chaque nœud contient entre $m$ et $M$ fils \\ avec $m \leq \frac{M}{2}$}
%%     \end{Itemize}
%%   \end{slide}
%% }
%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

%%   \begin{slide}[Box]{Visualisation : R-Tree}
%%       \textbf{Hauteur de l'arbre et nombre de nœuds au pire cas}
%%     \begin{Itemize}
%%     \item Hauteur
%%       \begin{equation*}
%%         h_{max} = \left\lceil\log_{m} n\right\rceil - 1
%%       \end{equation*}
%%       \item Nombre de nœuds
%%       \begin{equation*}
%%         N_{noeuds}=\sum_{i=1}^{h_{max}}{\left\lceil\frac{n}{m^i}\right\rceil}
%%       \end{equation*}
%%     \end{Itemize}
%%   \end{slide}

%%   %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

%% \begin{slide}[Box]{Que reste-t-il à faire ?}
%%     \vspace{1cm}
%%     \begin{Itemize}
%%     \item Chercher la meilleure implémentation pour le R-Tree.
%%     \item Une étude approfondie pour prendre en compte la gestion des filtres.
%%     \item Trouver un moyen efficace de sauvegarde.
%%     \end{Itemize}
%%   \end{slide}

  \end{document}
